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Axial anomaly effect to the chiral-partner structure of diquarks at high temperature

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arxiv 2305.09730 v1 pith:52CRDVRN submitted 2023-05-16 hep-ph nucl-th

Axial anomaly effect to the chiral-partner structure of diquarks at high temperature

classification hep-ph nucl-th
keywords diquarksanomalyeffectschiralchiral-partnermasstemperatureaxial
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Masses of positive-parity and negative-parity diquarks are investigated at finite temperature with a quark chemical potential. We employ the three-flavor Nambu-Jona-Lasinio model, in order to delineate chiral properties of the diquarks, in particular, the mass degeneracy of chiral partners under extreme conditions. We focus on the effects of $U(1)_A$ axial anomaly on manifestation of the chiral-partner structures. We find that, in the absence of anomaly effects to the diquarks, the mass degeneracies in all $[ud]$, $[su]$ and $[sd]$ diquark sectors take place prominently above the pseudocritical temperature of the chiral restoration. On the other hand, the anomaly effects are found to hinder the $[ud]$ diquark from exhibiting the mass degeneracy, accompanied by a slow reduction of the $\bar{s}s$ condensate, while the $[su]$ and $[sd]$ diquarks are not much affected. Our present investigation will provide useful information on the chiral-partner structure with the anomaly effects of diquarks for heavy-ion collision experiments of singly heavy baryons and doubly heavy tetraquarks, and for future lattice simulations of the diquarks.

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Cited by 1 Pith paper

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  1. Inverse Excitation Hierarchy in Doubly-Heavy Tetraquarks within the Diquark Model

    hep-ph 2026-03 conditional novelty 6.0

    In a diquark-model calculation, the ρ-mode excitation of Tcc (inside the light diquark) lies below the λ-mode excitation (between diquarks), an 'inverse hierarchy' driven by the light diquark's large size.